Blockchain will provide the lightweight security, interoperability and other services needed for Internet of Things applications, the companies say.

Mitch Wagner, Executive Editor, Light Reading

September 25, 2017

5 Min Read
Cisco & Partners See Blockchain Opportunities in IoT

Cisco, and a group of big enterprises and small software developers, see blockchain as an opportunity to provide essential security, interoperability and other services for Internet of Things applications. Now they're getting together to promote blockchain standards for IoT.

Cisco, Bosch, BNY Mellon, Gemalto and US Bank joined with a dozen other companies to launch the Trusted IoT Alliance, to develop and set the standard for an open source blockchain protocol to support IoT technology in major industries worldwide, according to a statement last week from the newly formed group.

"Every one of these companies is developing blockchain applications, services and products," Anoop Nannra, board member and co-chair of alliance and head of blockchain initiatives for Cisco Systems Inc. (Nasdaq: CSCO), tells Enterprise Cloud News. "It's an alliance of companies big and small, Fortune 500 and startups, everything in between. We have realized that there is value in collaborating and helping identify common tools and assets in the blockchain and IoT space."

The mission is to "connect Fortune 5000 enterprises, software developers and blockchain technology companies" with annual events, pilots, published open source code and coordinating standards and reference architecture. Group members been cooperating informally since December.

Figure 1: Cisco's Anoop Nannra Cisco's Anoop Nannra

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"Members of the group have already published a common API to register 'things' to both Hyperledger and Enterprise Ethereum blockchain networks," according to the statement. "The Alliance plans to fund small grants to support open source development and is reviewing proposals from IoT and blockchain technologists."

An initial goal is to develop a digital "birth certificate" for individual assets to create a unique and secure record of sales and transfers of the asset between owners. "And once machine-to-machine economies become a thing, how do you create a wallet to get them involved in commerce?" Nannra says.

For example, a blockchain application could enable an autonomous vehicle to pay for electricity on its own, because the vehicle has a built-in cryptocurrency wallet. That requires more than the wallet -- it requires the vehicle to identify itself as a noncompromised participant in an IoT network, Nannra says.

Blockchain isn't required for the payment itself, but blockchain can help secure the interaction, and provide security for delivery of electricity and for the operation of the entire infrastructure, Nannra says.

Likewise, as software-defined networking (SDN) and network functions virtualization (NFV) allow applications to move from the cloud to the edge and back again, blockchain can help vouch for the integrity of environments where applications are running. When new network functions are created in a new network environments, blockchain can help attest that the new environment was built with good design and security practices, Nannra says.

"We see blockchain as technology that can enforce governance and compliance through smart contracts and immutable record of date in the field," Nannra says. "Smart contracts" are code that runs on the blockchain platform, similar to the way in which applications and services now run on the cloud. The code executes when pre-specified external conditions are met.

For example, electrical utilities might use blockchain to certify availability of networks used to deliver electricity. Network instrumentation would monitor the network, and when the instrumentation certifies adequate availability, a blockchain application would certify the network is compliant and permit electrical transmission, Nannra says.

Conventional databases and applications can do those things too, but blockchain works better when there are multiple parties involved who don't necessarily trust each other. Using blockchain, code and data are distributed over the entire network, everyone has the same view and perspective, and everyone is executing the same smart contract. Multiple nodes makes it "dramatically harder" to "manipulate the transaction data or history," Nannra says.

Using conventional applications, it's an enormous hassle to sort out failed transactions between multiple parties who don't trust each other. "Where a transaction goes south, and fails for any reason -- on Wall Street, for example -- it can take several days to unravel a failed stock trade, and that's because everybody has their own administrative domain and everyone believes that what they see is the truth," Nannra says. "When a transaction fails on Wall Street, there is a small army of MBAs who get paid to unravel a day's worth of transactions and figure out where and why data disagrees. On a blockchain network, when a transaction fails, the root cause of the failure is immediate."

Nannra adds, "The blockchain provides real-time forensics across an alliance of partners."

In addition to Cisco, Bosch, BNY Mellon, Gemalto and US Bank, other members of the alliance are Bitse, Chronicled, ConsenSys, Ledger, Skuchain, Slock.it, HCM International of Foxconn Group, IOTA, Oaken Innovations, Qtum, Chain of Things and Big Chain DB.

IBM Corp. (NYSE: IBM) and Microsoft Corp. (Nasdaq: MSFT) are missing from the alliance. Those two companies were identified as market leaders in a survey of business users, according to Juniper Research. (See IBM, Microsoft Rank in Blockchain Survey.)

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About the Author(s)

Mitch Wagner

Executive Editor, Light Reading

San Diego-based Mitch Wagner is many things. As well as being "our guy" on the West Coast (of the US, not Scotland, or anywhere else with indifferent meteorological conditions), he's a husband (to his wife), dissatisfied Democrat, American (so he could be President some day), nonobservant Jew, and science fiction fan. Not necessarily in that order.

He's also one half of a special duo, along with Minnie, who is the co-habitor of the West Coast Bureau and Light Reading's primary chewer of sticks, though she is not the only one on the team who regularly munches on bark.

Wagner, whose previous positions include Editor-in-Chief at Internet Evolution and Executive Editor at InformationWeek, will be responsible for tracking and reporting on developments in Silicon Valley and other US West Coast hotspots of communications technology innovation.

Beats: Software-defined networking (SDN), network functions virtualization (NFV), IP networking, and colored foods (such as 'green rice').

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